Increased oxidative burden contributes to the pathogenesis of most inflammatory diseases and is associated with aging and chronic inflammation. Macrophages contribute to the generation of reactive oxygen species (ROS) within inflamed tissues. Currently, ROS generation is measured using fluorescent probes and colorimetric/fluorimetric biochemical assays. Hydrogen peroxide (H2O2) diffuses through the cell membrane and can be monitored in the extracellular space. Herein, we present a sensor for H2O2 detection released by cells in culture supernatants. H2O2 sensing performance was evaluated using chronoamperometric detection. A sensitivity of 0.0641 μA μM−1 cm−2 with a limit of detection of 6.55 μM and excellent selectivity against many interfe...
Integration of electrochemical detection (ED) in cell culture is an advantageous strategy to detect ...
Hydrogen peroxide (H2O2) is commonly known as a toxic reactive oxidative species (ROS) for cells. Re...
A novel approach for the simultaneous optical and electrochemical detection of biologically produced...
Increased oxidative burden contributes to the pathogenesis of most inflammatory diseases and is asso...
Oxidative burden is elevated in the lung of COPD patients and is associated with aging and chronic i...
Quantification of oxidative stress is a challenging task that can help in monitoring chronic inflamm...
Quantification of oxidative stress is a challenging task that can help in monitoring chronic inflamm...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
International audienceReactive oxygen species (ROS), in particular hydrogen peroxide (H2O2), are pro...
Hydrogen peroxide is traditionally associated with cellular damage; however, recent studies show tha...
Mitochondria consume oxygen in the respiratory chain and convert redox energy into ATP. As a side pr...
Hydrogen peroxide (H2O2) is one of the most important reactive oxygen species and it is involved in ...
Hydrogen peroxide (H2O2) is known to play a multifaceted role in cell physiology mechanisms involvin...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
Integration of electrochemical detection (ED) in cell culture is an advantageous strategy to detect ...
Hydrogen peroxide (H2O2) is commonly known as a toxic reactive oxidative species (ROS) for cells. Re...
A novel approach for the simultaneous optical and electrochemical detection of biologically produced...
Increased oxidative burden contributes to the pathogenesis of most inflammatory diseases and is asso...
Oxidative burden is elevated in the lung of COPD patients and is associated with aging and chronic i...
Quantification of oxidative stress is a challenging task that can help in monitoring chronic inflamm...
Quantification of oxidative stress is a challenging task that can help in monitoring chronic inflamm...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
International audienceReactive oxygen species (ROS), in particular hydrogen peroxide (H2O2), are pro...
Hydrogen peroxide is traditionally associated with cellular damage; however, recent studies show tha...
Mitochondria consume oxygen in the respiratory chain and convert redox energy into ATP. As a side pr...
Hydrogen peroxide (H2O2) is one of the most important reactive oxygen species and it is involved in ...
Hydrogen peroxide (H2O2) is known to play a multifaceted role in cell physiology mechanisms involvin...
Herein, we report a highly sensitive electrocatalytic sensor-cell construct that can electrochemical...
Integration of electrochemical detection (ED) in cell culture is an advantageous strategy to detect ...
Hydrogen peroxide (H2O2) is commonly known as a toxic reactive oxidative species (ROS) for cells. Re...
A novel approach for the simultaneous optical and electrochemical detection of biologically produced...